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The Alaska Reference Database originated as the standalone Alaska Fire Effects Reference Database, a ProCite reference database maintained by former BLM-Alaska Fire Service Fire Ecologist Randi Jandt. It was expanded under a Joint Fire Science Program grant for the FIREHouse project (The Northwest and Alaska Fire Research Clearinghouse). It is now maintained by the Alaska Fire Science Consortium and FRAMES, and is hosted through the FRAMES Resource Catalog. The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.

Displaying 1 - 25 of 53

Addressing wildfire is not simply a fire management, fire operations, or wildland-urban interface problem - it is a larger, more complex land management and societal issue. The vision for the next century is to: Safely and effectively extinguish fire, when needed; use fire where…
Year: 2011
Type: Document
Source: FRAMES

Schroeder, Buck
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Lee, Hellman
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Brown, Johnstone
Fire frequency is expected to increase due to climate warming in many areas, particularly the boreal forests. An increase in fire frequency may have important effects on the global carbon cycle by decreasing the size of boreal carbon stores. Our objective was to quantify and…
Year: 2011
Type: Document
Source: FRAMES, TTRS

White
From the text ... 'For suppression and prescribed fire operations, accurate RH information can be critical.'
Year: 2011
Type: Document
Source: TTRS

Pence, Zimmerman
From the text ... 'Federal agency policy requires documentation and analysis of all wildland fire response decisions. In the past, planning and decision documentation for fires were completed using multiple unconnected processes, yielding many limitations. In response,…
Year: 2011
Type: Document
Source: TTRS

Coen
From the text ... '... Understanding the interplay of factors -- particularly with the most variable one: weather -- can help explain and anticipate fire phenomena, a necessary part of managing an evolving fire situation. Changing our perspective from seeing just the fire to…
Year: 2011
Type: Document
Source: TTRS

Zhang
The MOPITT (Measurements Of Pollution In The Troposphere) CO measurements over a 10-year period (2000-2009) reveal consistently positive trends on the order of 0.13-0.19 x 1016 mol cm-2 per month in CO total column concentrations over the entire globe and the hemispheres. Two…
Year: 2011
Type: Document
Source: TTRS

Seidl, Fernandes, Fonseca, Gillet, Jönsson, Merganicova, Netherer, Arpaci, Bontemps, Bugmann, González-Olabarria, Lasch, Meredieu, Moreira, Schelhaas, Mohren
Natural disturbances play a key role in ecosystem dynamics and are important factors for sustainable forest ecosystem management. Quantitative models are frequently employed to tackle the complexities associated with disturbance processes. Here we review the wide variety of…
Year: 2011
Type: Document
Source: TTRS

Parisien, Parks, Krawchuk, Flannigan, Bowman, Moritz
In the boreal forest of North America, as in any fire-prone biome, three environmental factors must coincide for a wildfire to occur: an ignition source, flammable vegetation, and weather that is conducive to fire. Despite recent advances, the relative importance of these…
Year: 2011
Type: Document
Source: TTRS

Hyde, Smith, Ottmar, Alvarado, Morgan
Coarse woody debris serves many functions in forest ecosystem processes and has important implications for fire management as it affects air quality, soil heating and carbon budgets when it combusts. There is relatively little research evaluating the physical properties relating…
Year: 2011
Type: Document
Source: FRAMES, TTRS

Daniels, Maertens, Stan, McCloskey, Cochrane, Gray
Climate is an important driver of forest dynamics. In this paper, we present three case studies from the forests of British Columbia to illustrate the direct and indirect effects of climatic variation and global warming on forest composition and function. (1) Tree mortality…
Year: 2011
Type: Document
Source: TTRS

Abatzoglou, Kolden
Efforts to quantify relationships between climate and wildfire in Alaska have not yet explored the role of higher-frequency meteorological conditions on individual wildfire ignition and growth. To address this gap, meteorological data for 665 large fires that burned across the…
Year: 2011
Type: Document
Source: FRAMES, TTRS

Cruz, Alexander
Fire behaviour associated with the stand structure of a particular pine plantation is the result of multiple interactions between climate and weather conditions, physical characteristics of the fuel complex, the micrometeorological environment (i.e., wind, fuel moisture and…
Year: 2011
Type: Document
Source: FRAMES

Van Wagner
From the text: 'In 1959 Williams published a method of calculating the fire season severity rating, an integrated measure of fire weather over the whole season. Being based solely on the daily fire danger index (1956 type), it could be used as an objective yardstick for…
Year: 1970
Type: Document
Source: TTRS

Connaughton
From the text: 'We have established that fire in the Intermountain West is a well recognized and time honored natural orce as part of our dynamic evolution. We have had no trouble agreeing that fire preceded man and, until very recently at least, has been a far more potent force…
Year: 1970
Type: Document
Source: TTRS

Turner
The accumulated hours of bright sunshine provide a simple index of fire season severity for the southern coastal area of British Columbia. This index, based on the period May 1 to August 31, is highly correlated with the annual acreage burned over the Vancouver Forest District.…
Year: 1970
Type: Document
Source: TTRS

Simard
Between 1931 and 1961 Canadian forest fire researchers gathered a vast quantity of data on weather, fuel moisture and test fire behavior. The original purpose of the data was primarily for the development of forest fire danger tables. The data was gathered at 11 field stations…
Year: 1970
Type: Document
Source: TTRS

Fosberg, Lancaster, Schroeder
Standard drying conditions in the laboratory have been related to the diurnal fluctuations of temperature and humidity to define a standard drying day for forest fuels. The mean equilibrium moisture content of a fuel on a standard drying day is slightly different from the…
Year: 1970
Type: Document
Source: TTRS

Byram, Martin
The fire whirlwind, an erratic and violent phenomenon associated with the behavior of intense fires, may generate velocities comparable to those reached in tornadoes. All the conditions essential to the formation of fire whirlwinds can be readily produced in the laboratory on a…
Year: 1970
Type: Document
Source: TTRS

Cargill
Fire perimeters can be quickly estimated using a 'rate of spread/elapsed time' table. This eliminates the need for plotting the fire acreage in order to determine the perimeter of the fire, and control force requirements based on fire perimeter can be determined quicker.
Year: 1970
Type: Document
Source: TTRS

Appleby
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Lu, Charney, Zhong, Bian, Liu
A warm-season (May through October) Haines Index climatology is derived using 32-km regional reanalysis temperature and humidity data from 1980 to 2007. We compute lapse rates, dewpoint depressions, Haines Index factors A and B, and values for each of the low-, mid- and high-…
Year: 2011
Type: Document
Source: FRAMES, TTRS

Long, Oxarart
Detailed point weather forecasts are a critical component of fire management planning. Accurate hour-by-hour forecasts for your exact location are valuable when you are preparing to ignite a prescribed burn and want to compare your prescription with actual conditions. They also…
Year: 2011
Type: Document
Source: FRAMES, TTRS

Lundquist, Camp, Tyrrell, Seybold, Cannon, Lodge
Trees do not just die; there is always a primary cause, and often contributing factors. Trees need adequate quantities of water, heat, light, nutrients, carbon dioxide, oxygen, and other abiotic resources to sustain life, growth, and reproduction. When these factors are…
Year: 2011
Type: Document
Source: FRAMES